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Induced Draft Cooling Towers

Induced Draft Cooling Towers

50000 INR/Piece

Product Details:

  • Usage Industrial
  • Color Green
  • Product Type Induced Draft Cooling Towers
  • Condition New
  • Power Supply Single Phase
  • Voltage 380 Volt (v)
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Induced Draft Cooling Towers Price And Quantity

  • 50000 INR/Piece
  • 1 Piece

Induced Draft Cooling Towers Product Specifications

  • Induced Draft Cooling Towers
  • 380 Volt (v)
  • Industrial
  • Green
  • New
  • Single Phase

Induced Draft Cooling Towers Trade Information

  • 1 Week
  • Wooden Packing, As per product
  • Australia North America Eastern Europe Middle East Africa Central America South America Western Europe Asia
  • All India
  • ISO 9001:2015

Product Description

Induced Draft Cooling Towers are basically mass and heat exchange equipment. It expels thermal from the water as well as loses a small amount of water amid thermal exchange to the air. At the point when air is blowing from below it interacted with forthcoming water the heat content of which is great and at the season of contact, the air induces the vanishing of a water drop. It is realized that to get vanished water needs to increase certain measures of idle thermal energy. It does as such from adjacent drops and vanishes into a vapor state. Because of the expulsion of sensible thermal, the remaining water drops loses temperature, and chills off. Further, because of the higher surface place in packing thermal exchange rate enhances, and water is advanced and chilled to the demanded temperature. Air agitating vertically takes away a definite measure of water matter in (a vapor state) with it that is not alluring. With a specific end goal to recuperate lost water float eliminators are offered. Forthcoming air loses its speed as well as makes sure the measure of vapor is changed over into water that falls descending and gathered in the bowl.

Induced Draft Cooling Towers are heat rejection devices designed to take out waste heat from the atmosphere with the aid of cooling processes of a water stream to a lower temperature. The process of heat rejection in any cooling tower is known as "evaporative". This allows little quantity of the water to be cooled to disperse into the moving air stream for providing considerable cooling to the water stream. The heat that is transferred to the air stream then increases the temperature along with relative humidity to 100% which is released into the atmosphere.

These types of evaporative heat rejection devices are widely used at places of lower water temperatures such as radiators in a car. These Cooling Towers are highly cost-effective as well as energy-efficient systems that fulfill the demands of cooling. As they can cool the surface rapidly after evaporating water, their cooling potential is more than other devices.

FAQ 

1. What is an induced draft cooling tower?

Ans - An induced draft cooling tower is a type of cooling tower that uses an induced draft fan to draw air in at the bottom of the tower, where the warm air is then expelled out the top of the tower. This helps to create a cooling effect on the water within the cooling tower.

2. What are the benefits of using an induced draft cooling tower?

Ans - The primary benefit of using an induced draft cooling tower is that it has the ability to efficiently and effectively cool large amounts of water. They are also typically more reliable and quieter than other cooling tower types.

3. How does an induced draft cooling tower work?

Ans - An induced draft cooling tower works by drawing warm air in at the bottom of the tower, where the air is then cooled by the water within the tower. The cooled air is then expelled from the top of the tower, creating a cooling effect on the water within the tower.

4. What is the difference between an induced draft cooling tower and other types of cooling towers?

Ans - The primary difference between an induced draft cooling tower and other types of cooling towers is that an induced draft cooling tower uses an induced draft fan to draw in air at the bottom of the tower, where the air is then cooled by the water within the tower. Other types of cooling towers do not have the ability to draw in air and instead, rely on natural convection to cool the water.

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